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Clathrin-Mediated Endocytosis in Living Host Cells Visualized through Quantum Dot Labeling of Infectious Hematopoietic Necrosis Virus▿†

机译:网格蛋白介导的活体宿主细胞内吞作用,通过感染性造血坏死病毒的量子点标记可见

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摘要

Infectious hematopoietic necrosis virus (IHNV) is an important fish pathogen that infects both wild and cultured salmonids. As a species of the genus Novirhabdovirus, IHNV is a valuable model system for exploring the host entry mechanisms of rhabdoviruses. In this study, quantum dots (QDs) were used as fluorescent labels for sensitive, long-term tracking of IHNV entry. Using live-cell fluorescence microscopy, we found that IHNV is internalized through clathrin-coated pits after the virus binds to host cell membranes. Pretreatment of host cells with chlorpromazine, a drug that blocks clathrin-mediated endocytosis, and clathrin light chain (LCa) depletion using RNA interference both resulted in a marked reduction in viral entry. We also visualized transport of the virus via the cytoskeleton (i.e., actin filaments and microtubules) in real time. Actin polymerization is involved in the transport of endocytic vesicles into the cytosol, whereas microtubules are required for the trafficking of clathrin-coated vesicles to early endosomes, late endosomes, and lysosomes. Disrupting the host cell cytoskeleton with cytochalasin D or nocodazole significantly impaired IHNV infectivity. Furthermore, infection was significantly affected by pretreating the host cells with bafilomycin A1, a compound that inhibits the acidification of endosomes and lysosomes. Strong colocalizations of IHNV with endosomes indicated that the virus is internalized into these membrane-bound compartments. This is the first report in which QD labeling is used to visualize the dynamic interactions between viruses and endocytic structures; the results presented demonstrate that IHNV enters host cells via clathrin-mediated endocytic, cytoskeleton-dependent, and low-pH-dependent pathways.
机译:传染性造血坏死病毒(IHNV)是一种重要的鱼类病原体,可同时感染野生和养殖鲑鱼。作为Novirhabdovirus属的一种,IHNV是一种有价值的模型系统,可用于探索弹状病毒的宿主进入机制。在这项研究中,量子点(QD)被用作荧光标记,用于对IHNV进入进行敏感的长期跟踪。使用活细胞荧光显微镜,我们发现病毒结合到宿主细胞膜后,IHNV通过网格蛋白包被的凹陷被内化。用氯丙嗪预处理宿主细胞,氯丙嗪是一种阻断网格蛋白介导的内吞作用的药物,而网格蛋白轻链(LCa)的消耗是利用RNA干扰,两者均导致病毒进入显着减少。我们还可视化了病毒通过细胞骨架(即肌动蛋白丝和微管)的实时运输。肌动蛋白聚合参与将内吞囊泡运输到胞质溶胶中,而将网格蛋白包被的囊泡运输到早期内体,晚期内体和溶酶体需要微管。用细胞松弛素D或诺考达唑破坏宿主细胞的骨架会大大削弱IHNV的感染力。此外,用巴氟霉素A1预处理宿主细胞可显着影响感染,巴氟霉素A1是一种抑制内体和溶酶体酸化的化合物。 IHNV与内体的强烈共定位表明该病毒被内化到这些膜结合的区室中。这是第一份使用QD标记可视化病毒与内吞结构之间动态相互作用的报告。提出的结果表明,IHNV通过网格蛋白介导的内吞,细胞骨架依赖性和低pH依赖性途径进入宿主细胞。

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